The nonplanar cusp and collinear anomalous dimension at four loops in SYM theory
arXiv:1712.07563
Abstract
We present numerical results for the nonplanar lightlike cusp and collinear anomalous dimension at four loops in SYM theory, which we infer from a calculation of the Sudakov form factor. The latter is expressed as a rational linear combination of uniformly transcendental integrals for arbitrary colour factor. Numerical integration in the nonplanar sector reveals explicitly the breakdown of quadratic Casimir scaling at the four-loop order. A thorough analysis of the reported numerical uncertainties is carried out.
10 pages, 2 figures, 1 table. Proceedings of the 13th International Symposium on Radiative Corrections (Applications of Quantum Field Theory to Phenomenology), 25-29 September, 2017, St. Gilgen, Austria
References in corpus (7)
- On the Resolution of Singularities of Multiple Mellin-Barnes Integrals
- Loop Corrections to Supergravity on
- Numerical Evaluation of Tensor Feynman Integrals in Euclidean Kinematics
- Quark and gluon form factors to four loop order in QCD: the contributions
- Color-kinematics duality and Sudakov form factor at five loops for N=4 supersymmetric Yang-Mills theory
- Matter Dependence of the Three-Loop Soft Anomalous Dimension Matrix
- Four-Loop Collinear Anomalous Dimension in N = 4 Yang-Mills Theory